Abstract

This paper presents the results of test-stand measurements of the instrumental polarization of the MS 3M—5 SA objective. It is proposed to use a similar measurement technique and the polarization–optical components used here to subsequently measure the instrumental polarization of the Large Azimuthal Telescope of the Special Astrophysical Observatory, Russian Academy of Sciences.

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  1. R. A.  Stokes, J. B.  Swedlund, R. W.  Avery, J. J.  Michalsky, “Interstellar circular polarization: results from a survey of 84 stars,” Astron. J. 79, 678 (1974).
    [CrossRef]
  2. D. L.  Coffen, “Optical polarization measurements of the Jupiter atmosphere at 103° phase angle,” J. Geophys. Res. 79, 3645 (1974).
    [CrossRef]
  3. J. V.  Daniel, “Monte Carlo analysis of polarization by Thomson scattering in circumstellar envelopes,” Astron. Astrophys. 86, 198 (1980).
  4. A.  Dollfus, “Optical polarimetry of the Galilean satellites of Jupiter,” Icarus 25, 416 (1975).
    [CrossRef]
  5. A.  Dollfus, M.  Deschamps, L. V.  Ksanfomaliti, “The surface texture of the Martian soil from the Soviet spacecrafts Mars-5 photopolarimeters,” Astron. Astrophys. 123, No. 2, 225–237 (1983).
  6. A.  Gerrard, J. M.  Burch, Introduction to Matrix Methods in Optics (Wiley, New York, 1975; Mir, Moscow, 1978), pp. 214–216.
  7. A. M.  Shutov, Methods of Optical Astropolarimetry (URSS, Moscow, 2007).

1983 (1)

A.  Dollfus, M.  Deschamps, L. V.  Ksanfomaliti, “The surface texture of the Martian soil from the Soviet spacecrafts Mars-5 photopolarimeters,” Astron. Astrophys. 123, No. 2, 225–237 (1983).

1980 (1)

J. V.  Daniel, “Monte Carlo analysis of polarization by Thomson scattering in circumstellar envelopes,” Astron. Astrophys. 86, 198 (1980).

1975 (1)

A.  Dollfus, “Optical polarimetry of the Galilean satellites of Jupiter,” Icarus 25, 416 (1975).
[CrossRef]

1974 (2)

R. A.  Stokes, J. B.  Swedlund, R. W.  Avery, J. J.  Michalsky, “Interstellar circular polarization: results from a survey of 84 stars,” Astron. J. 79, 678 (1974).
[CrossRef]

D. L.  Coffen, “Optical polarization measurements of the Jupiter atmosphere at 103° phase angle,” J. Geophys. Res. 79, 3645 (1974).
[CrossRef]

Avery, R. W.

R. A.  Stokes, J. B.  Swedlund, R. W.  Avery, J. J.  Michalsky, “Interstellar circular polarization: results from a survey of 84 stars,” Astron. J. 79, 678 (1974).
[CrossRef]

Burch, J. M.

A.  Gerrard, J. M.  Burch, Introduction to Matrix Methods in Optics (Wiley, New York, 1975; Mir, Moscow, 1978), pp. 214–216.

Coffen, D. L.

D. L.  Coffen, “Optical polarization measurements of the Jupiter atmosphere at 103° phase angle,” J. Geophys. Res. 79, 3645 (1974).
[CrossRef]

Daniel, J. V.

J. V.  Daniel, “Monte Carlo analysis of polarization by Thomson scattering in circumstellar envelopes,” Astron. Astrophys. 86, 198 (1980).

Deschamps, M.

A.  Dollfus, M.  Deschamps, L. V.  Ksanfomaliti, “The surface texture of the Martian soil from the Soviet spacecrafts Mars-5 photopolarimeters,” Astron. Astrophys. 123, No. 2, 225–237 (1983).

Dollfus, A.

A.  Dollfus, M.  Deschamps, L. V.  Ksanfomaliti, “The surface texture of the Martian soil from the Soviet spacecrafts Mars-5 photopolarimeters,” Astron. Astrophys. 123, No. 2, 225–237 (1983).

A.  Dollfus, “Optical polarimetry of the Galilean satellites of Jupiter,” Icarus 25, 416 (1975).
[CrossRef]

Gerrard, A.

A.  Gerrard, J. M.  Burch, Introduction to Matrix Methods in Optics (Wiley, New York, 1975; Mir, Moscow, 1978), pp. 214–216.

Ksanfomaliti, L. V.

A.  Dollfus, M.  Deschamps, L. V.  Ksanfomaliti, “The surface texture of the Martian soil from the Soviet spacecrafts Mars-5 photopolarimeters,” Astron. Astrophys. 123, No. 2, 225–237 (1983).

Michalsky, J. J.

R. A.  Stokes, J. B.  Swedlund, R. W.  Avery, J. J.  Michalsky, “Interstellar circular polarization: results from a survey of 84 stars,” Astron. J. 79, 678 (1974).
[CrossRef]

Shutov, A. M.

A. M.  Shutov, Methods of Optical Astropolarimetry (URSS, Moscow, 2007).

Stokes, R. A.

R. A.  Stokes, J. B.  Swedlund, R. W.  Avery, J. J.  Michalsky, “Interstellar circular polarization: results from a survey of 84 stars,” Astron. J. 79, 678 (1974).
[CrossRef]

Swedlund, J. B.

R. A.  Stokes, J. B.  Swedlund, R. W.  Avery, J. J.  Michalsky, “Interstellar circular polarization: results from a survey of 84 stars,” Astron. J. 79, 678 (1974).
[CrossRef]

Astron. Astrophys. (2)

J. V.  Daniel, “Monte Carlo analysis of polarization by Thomson scattering in circumstellar envelopes,” Astron. Astrophys. 86, 198 (1980).

A.  Dollfus, M.  Deschamps, L. V.  Ksanfomaliti, “The surface texture of the Martian soil from the Soviet spacecrafts Mars-5 photopolarimeters,” Astron. Astrophys. 123, No. 2, 225–237 (1983).

Astron. J. (1)

R. A.  Stokes, J. B.  Swedlund, R. W.  Avery, J. J.  Michalsky, “Interstellar circular polarization: results from a survey of 84 stars,” Astron. J. 79, 678 (1974).
[CrossRef]

Icarus (1)

A.  Dollfus, “Optical polarimetry of the Galilean satellites of Jupiter,” Icarus 25, 416 (1975).
[CrossRef]

J. Geophys. Res. (1)

D. L.  Coffen, “Optical polarization measurements of the Jupiter atmosphere at 103° phase angle,” J. Geophys. Res. 79, 3645 (1974).
[CrossRef]

Other (2)

A.  Gerrard, J. M.  Burch, Introduction to Matrix Methods in Optics (Wiley, New York, 1975; Mir, Moscow, 1978), pp. 214–216.

A. M.  Shutov, Methods of Optical Astropolarimetry (URSS, Moscow, 2007).

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